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Sacrificial amphiphiles: Eco-friendly chemical herders as oil spill mitigation chemicals

机译:牺牲性两亲性:环保化学牧民作为减少溢油的化学物质

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摘要

Crude oil spills are a major threat to marine biota and the environment. When light crude oil spills on water, it forms a thin layer that is difficult to clean by any methods of oil spill response. Under these circumstances, a special type of amphiphile termed as “chemical herder” is sprayed onto the water surrounding the spilled oil. The amphiphile forms a monomolecular layer on the water surface, reducing the air–sea surface tension and causing the oil slick to retract into a thick mass that can be burnt in situ. The current best-known chemical herders are chemically stable and nonbiodegradable, and hence remain in the marine ecosystem for years. We architect an eco-friendly, sacrificial, and effective green herder derived from the plant-based small-molecule phytol, which is abundant in the marine environment, as an alternative to the current chemical herders. Phytol consists of a regularly branched chain of isoprene units that form the hydrophobe of the amphiphile; the chain is esterified to cationic groups to form the polar group. The ester linkage is proximal to an allyl bond in phytol, which facilitates the hydrolysis of the amphiphile after adsorption to the sea surface into the phytol hydrophobic tail, which along with the unhydrolyzed herder, remains on the surface to maintain herding action, and the cationic group, which dissolves into the water column. Eventual degradation of the phytol tail and dilution of the cation make these sacrificial amphiphiles eco-friendly. The herding behavior of phytol-based amphiphiles is evaluated as a function of time, temperature, and water salinity to examine their versatility under different conditions, ranging from ice-cold water to hot water. The green chemical herder retracted oil slicks by up to ~500, 700, and 2500% at 5°, 20°, and 35°C, respectively, during the first 10 min of the experiment, which is on a par with the current best chemical herders in practice.
机译:原油泄漏是对海洋生物和环境的重大威胁。当轻质原油溅到水上时,它会形成一层薄层,很难通过任何漏油响应方法进行清洁。在这种情况下,将一种特殊的两亲物称为“化学牧民”,喷洒到溢出油周围的水面上。两亲物在水表面形成一个单分子层,从而降低了海-海表面张力,并使浮油缩回了很厚的团块,可以就地燃烧。当前最著名的化学牧民化学稳定且不可生物降解,因此在海洋生态系统中保留了多年。我们构建了一种生态友好,可牺牲且有效的绿色牧民,该牧民是基于植物的小分子植物醇(在海洋环境中含量丰富)替代当前的化学牧民。植物醇由形成两亲物疏水性的异戊二烯单元的规则分支链组成。该链被酯化为阳离子基团以形成极性基团。酯键靠近植醇中的烯丙基键,这有助于两亲物在吸附到海面后水解成植醇疏水性尾巴,而该疏水性尾巴与未水解的牧民一起保留在表面上,以保持聚合作用,而阳离子性基团,它溶解在水柱中。植醇尾部的最终降解和阳离子的稀释使这些牺牲性两亲物变得生态友好。根据时间,温度和水盐度对植物醇基两亲物的放牧行为进行评估,以检查其在不同条件下(从冰冷的水到热水)的多功能性。在实验的前10分钟内,绿色化学牧民在5°,20°和35°C时分别将浮油缩回了约500、700和2500%,这与目前的最佳水平相当实践中的化学牧民。

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